Runge Kutta method for 2nd order ODE || Nuemrical Methods || 18mat31 || Dr Prashant Patil

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In this video, the second-order ODE d^2y/dx^2=x(dy/dx)^2-y^2 is solved numerically by the Runge-Kutta method of fourth-order by reducing it into simultaneous first-order ODE.

#DrPrashantPatil#NumericalMethods#18MAT31_Module05#Lecture02

For more videos and playlist of Engineering Mathematics go through the playlists

1)18MAT31- TRANSFORM CALCULUS, FOURIER SERIES AND NUMERICAL TECHNIQUES:
1) Laplace Transforms [18MAT31-Module 01]:
2) Inverse Laplace Transform [18MAT31-Module 01]:
3) Fourier Series | 18mat31 | Module 02 | Dr Prashant Patil
4) Numerical Methods for ODE | 18mat31 | Module 04 & 05 | Dr Prashant Patil
5) Calculus of Variations | 18mat31 | Module 05 | Dr Prashant Patil

2)18MAT21- Advanced Calculus and Numerical Techniques:

1) Vector Calculus [18MAT21-Module 01]:
2) Ordinary Differential Equation of Higher order[18MAT21-Module 02]:
3) Partial Differential Equations [18MAT21-Module 03]:
4) Infinite Series [18MAT21-Module 04]:

3) 18MAT41- Complex Analysis, Probability and Statistical Methods:
1) Conformal Transformations[18MAT41-Module 02]
2) Complex Integration[18MAT41-Module 02]
3) Probability Distributions[18MAT41-Module 03]
4) Joint Probability Distribution and Sampling [18MAT41-Module 05]

4)18MATDIP41- Additional Mathematics II:
1) Probability[18MATDIP41-Module05]
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Mashaallah sir aap bahot achha samjhate aap videos dekha mai
Heat equation wave equation and laplace equation 6 mesh or 12 mesh 👍👍👍

imtiyazali
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Sir how to use calsi u using l 2 and l3

mohammedkaif
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Sir facing problem to put that formula in the calculator because I dropped my studies for 4 years and now took admission for engineering kindly help for this 🙏🙏

deepakbangalore